TY - JOUR
T1 - Pharmacological characterization of the inhibition by moxonidine and agmatine on the cardioaccelerator sympathetic outflow in pithed rats
AU - Cobos-Puc, LE
AU - Villalon Herrera, CM
AU - Ramirez Rosas, Martha
AU - Sanchez-Lopez, A
AU - Lozano-Cuenca, J
AU - Gomez-Diaz, B
AU - Maassen van den Brink, Antoinette
AU - Centurion, D
PY - 2009
Y1 - 2009
N2 - This study analysed the inhibition produced by the agonists moxonidine (imidazoline I-1 receptors > alpha(2)-adrenoceptors) and agmatine (endogenous ligand of imidazoline I-1/I-2 receptors), using B-HT 933 (6-ethyl-5,6,7,8-tetrahydro-4H-oxazolo[4,5-d]azepin-2-amine dihydrochloride; alpha(2)-adrenoceptors) for comparison, on the rat cardioaccelerator sympathetic outflow. Male Wistar rats were pithed and prepared to stimulate the cardiac sympathetic outflow or to receive i.v. bolus of exogenous noradrenaline. Sympathetic stimulation or noradrenaline produced, respectively, frequency-dependent and dose-dependent tachycardic responses. l.v. continuous infusions of moxonidine (3 and 10 mu g/kg min). agmatine (1000 and 3000 mu g/kg min) and B-HT 933 (30 and 100 mu g/kg min) inhibited the tachycardic responses to sympathetic stimulation, but not those to noradrenaline. The cardiac sympatho-inhibition by either moxonidine (3 mu g/kg min) or B-HT 933 (30 mu g/kg min) was not modified by i.v. injections of saline or the antagonists AGN192403 [(+/-)-2-endo-Amino-3-exo-isopropylbicyclo[2.2.1]heptane hydrochloride; 3000 mu g/kg; imidazoline I-1 receptors] or BU224 (2-(4,5-dihydroimidazol-2-yl)quinoline hydrochloride; 300 mu g/kg; imidazoline I-2 receptors) and abolished by rauwolscine (300 mu g/kg; alpha(2)-adrenoceptors). At the same doses of these compounds, the sympatho-inhibition to moxonidine (10 mu g/kg min) and agmatine (1000 mu g/kg min) was: (1) not modified by saline, AGN192403 or BU224; (2) partially blocked by rauwolscine or the combination of rauwolscine plus BU224: and (3) abolished by the combination of rauwolscine plus AGN192403. These results demonstrate that the cardiac sympatho-inhibition to: (1) 3 mu g/kg min moxonidine or 30 mu g/kg min B-HT 933 involves alpha(2)-adrenoceptors; and (2) 10 mu g/kg min moxonidine or 1000 mu g/kg min agmatine involves alpha(2)-adrenoceptors and imidazoline I-1 receptors. (C) 2009 Elsevier B.V. All rights reserved.
AB - This study analysed the inhibition produced by the agonists moxonidine (imidazoline I-1 receptors > alpha(2)-adrenoceptors) and agmatine (endogenous ligand of imidazoline I-1/I-2 receptors), using B-HT 933 (6-ethyl-5,6,7,8-tetrahydro-4H-oxazolo[4,5-d]azepin-2-amine dihydrochloride; alpha(2)-adrenoceptors) for comparison, on the rat cardioaccelerator sympathetic outflow. Male Wistar rats were pithed and prepared to stimulate the cardiac sympathetic outflow or to receive i.v. bolus of exogenous noradrenaline. Sympathetic stimulation or noradrenaline produced, respectively, frequency-dependent and dose-dependent tachycardic responses. l.v. continuous infusions of moxonidine (3 and 10 mu g/kg min). agmatine (1000 and 3000 mu g/kg min) and B-HT 933 (30 and 100 mu g/kg min) inhibited the tachycardic responses to sympathetic stimulation, but not those to noradrenaline. The cardiac sympatho-inhibition by either moxonidine (3 mu g/kg min) or B-HT 933 (30 mu g/kg min) was not modified by i.v. injections of saline or the antagonists AGN192403 [(+/-)-2-endo-Amino-3-exo-isopropylbicyclo[2.2.1]heptane hydrochloride; 3000 mu g/kg; imidazoline I-1 receptors] or BU224 (2-(4,5-dihydroimidazol-2-yl)quinoline hydrochloride; 300 mu g/kg; imidazoline I-2 receptors) and abolished by rauwolscine (300 mu g/kg; alpha(2)-adrenoceptors). At the same doses of these compounds, the sympatho-inhibition to moxonidine (10 mu g/kg min) and agmatine (1000 mu g/kg min) was: (1) not modified by saline, AGN192403 or BU224; (2) partially blocked by rauwolscine or the combination of rauwolscine plus BU224: and (3) abolished by the combination of rauwolscine plus AGN192403. These results demonstrate that the cardiac sympatho-inhibition to: (1) 3 mu g/kg min moxonidine or 30 mu g/kg min B-HT 933 involves alpha(2)-adrenoceptors; and (2) 10 mu g/kg min moxonidine or 1000 mu g/kg min agmatine involves alpha(2)-adrenoceptors and imidazoline I-1 receptors. (C) 2009 Elsevier B.V. All rights reserved.
U2 - 10.1016/j.ejphar.2009.06.003
DO - 10.1016/j.ejphar.2009.06.003
M3 - Article
C2 - 19527708
SN - 0014-2999
VL - 616
SP - 175
EP - 182
JO - European Journal of Pharmacology
JF - European Journal of Pharmacology
IS - 1-3
ER -